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A new approach in modeling AC flashover voltage for polluted insulator

机译:污染绝缘子交流闪络电压建模的新方法

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Contamination-driven insulator failure is a problem that incessantly plagues the distribution system. It erodes power quality and diminishes system reliability. Research on insulator pollution is directed primarily to understand the physics of the growth of discharge and to develop a mathematical model, which can predict the critical flashover voltage and current. In this paper a new ac model for flashover voltage has been proposed taking into consideration "equivalent salt deposit density (ESDD)" in place of "resistance per unit length". The salient feature of the proposed model is that it takes into account the selection of an appropriate value of the proposed "pollution severity factor" which varies with the "salt present in the pollution layer" and "width of the pollution channel". The proposed model has been validated against experimental results taken from an experiment carried out on a flat plate model. It has been observed that the modeled results closely follow the experimental curves and can predict rms value of critical flashover voltage with a mean absolute error (MAE) of > 5.00%. The effectiveness of the model was also verified by comparing the modeled results against the experimental and theoretical results of other researchers and good agreement has been obtained.
机译:由污染引起的绝缘子故障是一个困扰配电系统的问题。它会侵蚀电能质量并降低系统可靠性。绝缘子污染的研究主要旨在了解放电增长的物理原理,并建立一个数学模型,该模型可以预测临界闪络电压和电流。在本文中,提出了一种新的交流电压交流模型,该模型考虑了“等效盐沉积密度(ESDD)”而不是“每单位长度的电阻”。所提出的模型的显着特征是,它考虑了所提出的“污染严重性因子”的适当值的选择,该值随“污染层中存在的盐分”和“污染通道的宽度”而变化。已针对在平板模型上进行的实验得出的实验结果验证了所提出的模型。已经观察到,建模结果紧密遵循实验曲线,并且可以以大于5.00%的平均绝对误差(MAE)预测临界闪络电压的rms值。通过将建模结果与其他研究人员的实验和理论结果进行比较,也验证了模型的有效性,并获得了良好的一致性。

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